首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Activated RIC, a small GTPase, genetically interacts with the Ras pathway and calmodulin during Drosophila development.
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Activated RIC, a small GTPase, genetically interacts with the Ras pathway and calmodulin during Drosophila development.

机译:果蝇发育过程中,激活的RIC(一种小GTP酶)与Ras途径和钙调蛋白发生遗传相互作用。

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摘要

The mammalian Rit and Rin proteins, along with the Drosophila homologue RIC, comprise a distinct and evolutionarily conserved subfamily of Ras-related small GTP-binding proteins. Unlike other Ras superfamily members, these proteins lack a signal for prenylation, contain a conserved but distinct effector domain, and, in the case of Rin and RIC, contain calmodulin-binding domains. To address the physiological role of this Ras subfamily in vivo, activated forms of the Drosophila Ric gene were introduced into flies. Expression of activated RIC proteins altered the development of well-characterized adult structures, including wing veins and photoreceptors of the compound eye. The effects of activated RIC could be mitigated by a reduction in dosage of several genes in the Drosophila Ras cascade, including Son of sevenless (Sos), Dsor (MEK), rolled (MAPK), and Ras itself. On the other hand, reduction of calmodulin exacerbated the defects caused by activated RIC, thus providing the first functional evidence for interaction of these molecules. We conclude that the activation of the Ras cascade may be an important in vivo requisite to the transduction of signals through RIC and that the binding of calmodulin to RIC may negatively regulate this small GTPase.
机译:哺乳动物的Rit和Rin蛋白,与果蝇同源RIC一起,包含与Ras相关的小GTP结合蛋白的独特且进化保守的亚家族。与其他Ras超家族成员不同,这些蛋白缺乏异戊二烯化的信号,包含保守但独特的效应域,在Rin和RIC的情况下,包含钙调蛋白结合域。为了解决该Ras家族在体内的生理作用,将果蝇Ric基因的活化形式引入果蝇中。激活的RIC蛋白的表达改变了成熟的成人结构的发育,包括翼状静脉和复眼的感光细胞。果蝇Ras级联反应中几种基因的剂量减少,可以减轻激活的RIC的影响,这些基因包括七人之子(Sos),Dsor(MEK),滚动(MAPK)和Ras本身。另一方面,钙调蛋白的减少加剧了由激活的RIC引起的缺陷,从而为这些分子相互作用提供了第一个功能证据。我们得出结论,Ras级联的激活可能是通过RIC进行信号转导的重要体内必需条件,而钙调蛋白与RIC的结合可能会对这种小GTP酶产生负调控。

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